Operational Impact of Trajectory Prediction Accuracy on Air Traffic Automation Tools

被引:0
|
作者
Paglione, Mike [1 ]
Young, Christina M. [1 ]
Torres, Sergio [2 ]
Hochwarth, Joachim K. [3 ]
McDonald, Greg
Bronsvoort, Jesper
Boucquey, Jean [4 ]
机构
[1] FAA, William J Hughes Tech Ctr, Atlantic City, NJ 08405 USA
[2] Leidos, Gaithersburg, MD USA
[3] GE Aviat Syst, Nav & Guidance, Grand Rapids, MI USA
[4] EUROCONTROL, Directorate SESAR & Res, Brussels, Belgium
关键词
trajectory prediction; trajectory based operations; ERAM; conflict probe;
D O I
暂无
中图分类号
V [航空、航天];
学科分类号
08 ; 0825 ;
摘要
The relationship between the accuracy of aircraft trajectory predictions and performance of automation tools which depend on those trajectories is a key element in Trajectory Based Operations (TBO) concepts. This paper includes a literature review of research concerning this relationship. In addition, a study is presented which uses predicted trajectories from the En Route Automation Modernization (ERAM) system. In laboratory simulations based on historical air traffic data collection, discrepancies are introduced between the "as flown" trajectory (based on recorded radar surveillance data) and the predicted trajectory used to provide decision support services to air traffic control. The performance of the Conflict Probe (CP) is then evaluated using established methods, and System Operating Characteristics (SOC) curves are generated at different levels of trajectory accuracy. This paper attempts to characterize and quantify trajectory prediction improvements in terms the end users can appreciate: impact to decision support tools.
引用
收藏
页数:10
相关论文
共 50 条
  • [21] 4D Trajectory Negotiation to Achieve Situational and Operational Awareness for Air Traffic Management
    Lu, Xiaodong
    Morioka, Kazuyuki
    Kanada, Naoki
    Koga, Tadashi
    2023 IEEE 15TH INTERNATIONAL SYMPOSIUM ON AUTONOMOUS DECENTRALIZED SYSTEM, ISADS, 2023, : 171 - 176
  • [22] Improved Multi-Aircraft Ground Trajectory Prediction for Air Traffic Control
    Lymperopoulos, Ioannis
    Lygeros, John
    JOURNAL OF GUIDANCE CONTROL AND DYNAMICS, 2010, 33 (02) : 347 - 362
  • [23] An Investigation into Conflict Resolution and Trajectory Prediction Aids for Future Air Traffic Control
    Trapsilawati, Fitri
    Chen, Chun-Hsien
    Khoo, Li Pheng
    TRANSDISCIPLINARY ENGINEERING: CROSSING BOUNDARIES, 2016, 4 : 503 - 512
  • [24] AUTOMATION IN AIR-TRAFFIC CONTROL
    GILBERT, GA
    CANADIAN AERONAUTICS AND SPACE JOURNAL, 1972, 18 (04): : 99 - &
  • [25] AUTOMATION IN AIR-TRAFFIC MANAGEMENT
    RATCLIFFE, S
    JOURNAL OF NAVIGATION, 1985, 38 (03): : 405 - 412
  • [26] AIR TRAFFIC CONTROLLERS FACE AUTOMATION
    Butterworth-Hayes, Philip
    AEROSPACE AMERICA, 2014, 52 (02) : 32 - 36
  • [27] AUTOMATION OF AIR-TRAFFIC CONTROL
    VILLIERS, J
    JOURNAL OF NAVIGATION, 1975, 28 (01): : 25 - 30
  • [28] Air traffic control automation in Armenia
    Mkrttchian, V
    Mkrtchyan, K
    AUTOMATED SYSTEMS BASED ON HUMAN SKILL 2000: JOINT DESIGN OF TECHNOLOGY AND ORGANISATION, 2000, : 71 - 73
  • [29] AUTOMATION AND AIR-TRAFFIC CONTROL
    GOODWIN, J
    JOURNAL OF NAVIGATION, 1980, 33 (01): : 18 - 22
  • [30] Strategic Deconfliction of 4D Trajectory and Perturbation Analysis for Air Traffic Control and Automation System
    Tang, Xinmin
    Zhang, Yu
    Chen, Ping
    Li, Bo
    Han, Songchen
    DISCRETE DYNAMICS IN NATURE AND SOCIETY, 2016, 2016